As shown in Figure VI.3, a square loop of wire, with a mass of 200 g, is free to pivot about a horizontal axis through one of its sides. A 0.50 T horizontal magnetic field is directed as shown. What current I in the loop, and in what direction, is needed to hold the loop steady in a horizontal plane? Loop can pivot about this axis. 10 cm 10 cm FIGURE VI.3
As shown in Figure VI.3, a square loop of wire, with a mass of 200 g, is free to pivot about a horizontal axis through one of its sides. A 0.50 T horizontal magnetic field is directed as shown. What current I in the loop, and in what direction, is needed to hold the loop steady in a horizontal plane? Loop can pivot about this axis. 10 cm 10 cm FIGURE VI.3
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
Transcribed Image Text:21. As shown in Figure VI.3, a square loop of wire, with a mass
of 200 g, is free to pivot about a horizontal axis through one
of its sides. A 0.50 T horizontal magnetic field is directed as
shown. What current I in the loop, and in what direction, is
needed to hold the loop steady in a horizontal plane?
Loop can pivot
about this axis.
10 cm
10 cm
FIGURE VI.3
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